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Are you interested in the microscopic structure of composites and membrane materials? Would you like to develop new electron microscopy or focused ion beam microscopy approaches for spatially
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of composites and membrane materials? Would you like to develop new electron microscopy or focused ion beam microscopy approaches for spatially resolved analysis of metal–organic frameworks? Are you interested in
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Brunel Composites Centre (BCC) is a Cambridge-based research and technology centre that sits between the knowledge base and industry offering high quality research in an innovative environment
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proposed aims at the development of a novel bioactive composite system to incorporate biomimetic cues to a synthetic scaffold and then test their stability, their physicochemical properties and evaluate
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composite system to incorporate biomimetic cues to a synthetic scaffold and then test their stability, their physicochemical properties and evaluate their ability to enable cell adhesion and proliferation and
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the scientific analyses of glass, including compositional analysis using techniques such as SEM-EDS and LA-ICP-MS, an ability to thrive as part of a diverse team and a willingness to contribute
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particular, the boron isotopic composition of seawater, which is requisite knowledge in calculating pCO2 from fossil boron isotope measurements, is thought to have varied over the Cenozoic, but these changes
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the scientific analyses of glass, including compositional analysis using techniques such as SEM-EDS and LA-ICP-MS, an ability to thrive as part of a diverse team and a willingness to contribute
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focus on leading/assisting in world-leading X-ray imaging experiments within the manufacturing area (in particular in batteries, additive manufacturing or composites). As well as taking part in
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in a design. The project is supported by Rolls-Royce, Spirit Aerosystems, the National Composites Centre (NCC) and the Advanced Manufacturing Innovation Centre. The post is a critical role, and as such